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Atmospheric angular momentum variations of Earth, Mars and Venus at seasonal time scales

机译:地球,火星和金星在季节性时标上的大气角动量变化

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摘要

Atmospheric angular momentum variations of a planet are associated with the global atmospheric mass redistribution and the wind variability. The exchange of angular momentum between the fluid layers and the solid planet is the main cause for the variations of the planetary rotation at seasonal time scales. In the present study, we investigate the angular momentum variations of the Earth, Mars and Venus, using geodetic observations, output of state-of-the-art global circulation models as well as assimilated data. We discuss the similarities and differences in angular momentum variations, planetary rotation and angular momentum exchange for the three terrestrial planets. We show that the atmospheric angular momentum variations for Mars and Earth are mainly annual and semi-annual whereas they are expected to be "diurnal" on Venus. The wind terms have the largest contributions to the LOD changes of the Earth and Venus whereas the matter term is dominant on Mars due to the CO_2 sublimation/ condensation. The corresponding LOD variations (ALOD) have similar amplitudes on Mars and Earth but are much larger on Venus, though more difficult to observe.
机译:行星的大气角动量变化与整体大气质量再分布和风的可变性有关。流体层和固体行星之间的角动量交换是行星旋转在季节性时标上变化的主要原因。在本研究中,我们使用大地观测,最新的全球环流模型的输出以及同化数据来研究地球,火星和金星的角动量变化。我们讨论了三个地面行星在角动量变化,行星自转和角动量交换方面的异同。我们表明,火星和地球的大气角动量变化主要是一年和半年,而在金星上它们将是“昼夜”的。风项对地球和金星的LOD变化有最大的贡献,而由于CO_2的升华/凝结,物质项在火星上占主导地位。相应的LOD变化(ALOD)在火星和地球上具有相似的幅度,但在金星上则更大,尽管更难观察。

著录项

  • 来源
    《Planetary and space science》 |2011年第10期|p.923-933|共11页
  • 作者单位

    Royal Observatory of Belgium, 3 Avenue Circulaire, 1180 Brussels, Belgium;

    Institut de physique du globe de Paris, 4 place Jussieu, 75252 Paris, France;

    Observatoire de Paris, 61, Avenue de Vobservatoire, 75014 Paris, France;

    Royal Observatory of Belgium, 3 Avenue Circulaire, 1180 Brussels, Belgium;

    Royal Observatory of Belgium, 3 Avenue Circulaire, 1180 Brussels, Belgium;

    Royal Observatory of Belgium, 3 Avenue Circulaire, 1180 Brussels, Belgium;

    Royal Observatory of Belgium, 3 Avenue Circulaire, 1180 Brussels, Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    angular momentum; atmosphere; rotation; mars; venus; earth;

    机译:角动量大气层;回转;火星;金星;地球;

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